Features and Benefits
- Low Offset Voltage: 750μV Maximum
- Low Offset Drift: 5μV/°C Maximum
- Input Bias Current:
- 1pA (Typical at 25°C)
- 15pA (Typical at 85°C)
- Rail-to-Rail Inputs and Outputs
- Gain Bandwidth Product: 14MHz
- CMRR: 70dB Minimum
- PSRR: 93dB Minimum
- Input Noise Voltage Density: 12nV/√Hz
- Supply Current: 1.05mA per Amp
- Shutdown Current: 2.3μA per Amp
- 2.7V to 5.5V Operation Voltage
- Available in 8-Lead MSOP and 10-Lead DFN Packages (LTC6087), 16-Lead SSOP and DFN Packages (LTC6088)
The LTC6087/LTC6088 are dual/quad, low noise, low offset, rail-to-rail input/output, unity-gain stable CMOS operational amplifiers that feature 1pA of input bias current. A 14MHz gain bandwidth and 7.2V/μs slew rate, combined with low noise (10nV/√Hz) and a low 0.75mV offset, make the LTC6087/LTC6088 useful in a variety of applications. The 1.05mA supply current and the shutdown mode are ideal for signal processing applications which demand performance with minimal power.
The LTC6087/LTC6088 has an output stage which swings within 30mV of either supply rail to maximize signal dynamic range in low supply applications. The input common mode range includes the entire supply voltage. These op amps are specified on power supply voltages of 3V and 5V from –40°C to 125°C.
The dual amplifier LTC6087 is available in 8-lead MSOP and 10-lead DFN packages. The quad amplifier LTC6088 is available in 16-lead SSOP and DFN packages.
- Portable Test Equipment
- Medical Equipment
- Data Acquisition
- High Impedance Transducer Amplifier
Product Lifecycle Recommended for New Designs
This product has been released to the market. The data sheet contains all final specifications and operating conditions. For new designs, ADI recommends utilization of these products.
Documentation & Resources
R513 Reliability Data3/26/2018
Tools & Simulations
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Models for the following parts are available in LTspice:
Use Photodiode Wizard to design a transimpedance amplifier circuit to interface with a photodiode. Select a photodiode from the library included in the tool, or enter custom photodiode specifications. Quickly observe tradeoffs between Bandwidth, Peaking (Q), and ENOB/SNR. Modify circuit parameters, and immediately see results in plots for pulse response, frequency response, and noise gain.
ADI has always placed the highest emphasis on delivering products that meet the maximum levels of quality and reliability. We achieve this by incorporating quality and reliability checks in every scope of product and process design, and in the manufacturing process as well. "Zero defects" for shipped products is always our goal.View our quality and reliability program and certifications for more information.
|Part Number||Material Declaration||Reliability Data||Pin/Package Drawing||CAD Symbols, Footprints & 3D Models|
|LTC6088CDHC#PBF||Material Declaration||Reliability Data||16-Lead DFN (5mm x 3mm w/ EP)|
|LTC6088CDHC#TRPBF||Material Declaration||Reliability Data||16-Lead DFN (5mm x 3mm w/ EP)|
|LTC6088CGN#PBF||Material Declaration||Reliability Data||16-Lead SSOP (Narrow 0.15 Inch)|
|LTC6088CGN#TRPBF||Material Declaration||Reliability Data||16-Lead SSOP (Narrow 0.15 Inch)|
|LTC6088HDHC#PBF||Material Declaration||Reliability Data||16-Lead DFN (5mm x 3mm w/ EP)|
|LTC6088HDHC#TRPBF||Material Declaration||Reliability Data||16-Lead DFN (5mm x 3mm w/ EP)|
|LTC6088HGN#PBF||Material Declaration||Reliability Data||16-Lead SSOP (Narrow 0.15 Inch)|
|LTC6088HGN#TRPBF||Material Declaration||Reliability Data||16-Lead SSOP (Narrow 0.15 Inch)|
|Wafer Fabrication Data||R513 Reliability Data|
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